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Related papers: How large is "large $N_c$" for Nuclear matter?

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We study the $N_c$ scalings of pion-nucleon and nucleon-nucleon scatterings and find that a consistent large $N_c$ counting can be established if we assume Witten's counting rules are applied to matrix elements or scattering amplitudes…

High Energy Physics - Phenomenology · Physics 2019-01-30 Guo-Ying Chen

We analyze the large-$N_c$ structure of the baryon-baryon potential derived in the framework of SU(3) chiral perturbation theory up to next-to-leading order including contact interactions as well as one-meson and two-meson exchange…

High Energy Physics - Phenomenology · Physics 2025-06-18 Thomas Vonk , Ulf-G. Meißner

The main progress in the field of nucleon-nucleon (NN) potentials, which we have seen in recent years, is the construction of some very quantitative (high-quality/high-precision) NN potentials. These potentials will serve as excellent input…

Nuclear Theory · Physics 2007-05-23 R. Machleidt

We study the thermodynamics of SU(N_c) pure gauge theories for N_c=3, 4 and 6. The continuum and thermodynamic limits of bulk quantities such as the pressure, energy density and the entropy density are taken by using several different…

High Energy Physics - Lattice · Physics 2010-12-24 Saumen Datta , Sourendu Gupta

Generalizations of QCD in which the number of colors N is taken to infinity are characterized by profound mathematical properties, with far-reaching implications for fundamental problems and for phenomenological issues alike. In this…

High Energy Physics - Lattice · Physics 2013-04-18 Marco Panero

We consider a simple model of large-Nc QCD defined by a spectrum consisting of an infinite set of equally spaced zero-width vector resonances. This model is an excellent theoretical laboratory for investigating certain approximation schemes…

High Energy Physics - Phenomenology · Physics 2009-11-07 M. Golterman , S. Peris , B. Phily , E. de Rafael

We present a progress report on our investigation of the thermodynamics of QCD with $N_f=2$ flavors of dynamical Wilson fermions in the limit of a large number of colors $N_c$. To date, studies of the thermodynamics of QCD at large $N_c$…

High Energy Physics - Lattice · Physics 2018-09-28 Thomas DeGrand , Daniel C. Hackett , Ethan T. Neil

A general scheme of the excluded-volume approximation as applied to multicomponent systems with an arbitrary degree of degeneracy has been developed. This scheme also admits an allowance for additional interactions between the components of…

Solar and Stellar Astrophysics · Physics 2014-06-13 A. V. Yudin

We examine the first-order cosmological QCD phase transition for a large class of parameter values, previously considered unlikely. We find that the hadron bubbles can nucleate at very large distance scales, they can grow as detonations as…

High Energy Physics - Phenomenology · Physics 2009-10-28 J. Ignatius , K. Kajantie , H. Kurki-Suonio , M. Laine

We investigate the behavior of light baryon masses in three inequivalent large-$N_c$ limits: 't~Hooft, QCD$_{{\rm AS}}$ and Corrigan-Ramond. Our framework is a constituent quark model with relativistic-type kinetic energy, stringlike…

High Energy Physics - Phenomenology · Physics 2014-11-21 Fabien Buisseret , Claude Semay

The physics of the orbitally excited baryons simplifies drastically in the large Nc limit. The states are arranged into irreducible representations of the contracted SU(4)_c symmetry, with mixing angles determined exactly. The ratios of the…

High Energy Physics - Phenomenology · Physics 2009-11-10 Dan Pirjol , Carlos Schat

The boson mass and the condensate in two dimensional QCD with $SU(N_c)$ colors are numerically evaluated with the Bogoliubov vacuum. It is found that the boson mass is finite at the massless limit, and it is well described by the…

High Energy Physics - Theory · Physics 2007-05-23 Takehisa Fujita , Makoto Hiramoto , Takeshi Homma

It is conventionally assumed that the negative mass squared term in the linear sigma model version of the pion Lagrangian is $M^2 \sim \Lambda_{\rm QCD}^2$ in powers of $N_c$. We consider the case where $M^2 \sim \Lambda^2_{\rm QCD}/N_c$ so…

High Energy Physics - Phenomenology · Physics 2018-10-17 Larry McLerran , Vladimir Skokov

Asymmetric dark matter is a well-motivated approach to explain the apparent coincidence between the relic densities of visible and dark matter, $\Omega_D \simeq 5.4\Omega_b$. A complete explanation requires two components, a relation…

High Energy Physics - Phenomenology · Physics 2026-03-04 Peter Cox , Rafael E. Pérez , Raymond R. Volkas

Macroscopic quantum phenomena refer to quantum features in objects of `large' sizes, systems with many components or degrees of freedom, organized in ways where they can be identified as macroscopic objects. This emerging field is ushered…

Quantum Physics · Physics 2015-06-15 B. L. Hu , Y. Subasi

This paper explores properties of baryons and finite density baryonic matter in an artificial world in which Nc, the number of colors, is large and the quarks of all species are degenerate and much larger than {\Lambda}_QCD. It has long…

Nuclear Theory · Physics 2015-03-18 Thomas D. Cohen , Nilay Kumar , Kamal K. Ndousse

We consider quantum chromodynamics (QCD) with Nc colors and Nf quark flavors at finite quark chemical potential mu_q or isospin chemical potential mu_I. We specifically address the nature of the ``Silver Blaze'' behavior in the framework of…

High Energy Physics - Theory · Physics 2014-12-16 Adi Armoni , Kenji Fukushima

If the number of colors is large, the ratio $m_\eta/m_{\eta'}$ is bounded from above. The bound is not satisfied by the observed $\eta$ and $\eta'$ masses.

High Energy Physics - Phenomenology · Physics 2009-09-11 Howard Georgi

This talk reviews recent developments in the use of large $N_c$ QCD in the description of baryonic resonances. The emphasis is on the model-independent nature of the approach. Key issues discussed include the spin-flavor symmetry which…

High Energy Physics - Phenomenology · Physics 2015-06-25 Thomas D. COhen

Nuclei are nearly transparent to each other when they collide at high energy, but the collisions do produce high energy density matter in the central rapidity region where most experimental measurements are made. What happens to the…

Nuclear Theory · Physics 2019-02-11 Ming Li , Joseph I. Kapusta
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